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More Wind Power Integration with Adjusted Energy Carriers for Space Heating in Northern China

机译:在中国北方,更多的风能与可调节能源载体进行空间供暖

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In Northern China, due to the high penetration of coal-fired cogeneration facilities, which are generally equipped with extraction-condensing steam turbines, lots of wind power resources may be wasted during the heating season. In contrast, considerable coal is consumed in the power generation sector. In this article, firstly it is revealed that there exists a serious divergence in the ratio of electrical to thermal energy between end users’ demand and the cogenerations’ production during off-peak load at night, which may negate active power-balancing of the electric power grid. Secondly, with respect to this divergence only occurring during off-peak load at night, a temporary proposal is given so as to enable the integration of more wind power. The authors suggest that if the energy carrier for part of the end users’ space heating is switched from heating water to electricity (e.g., electric heat pumps (EHPs) can provide space heating in the domestic sector), the ratio of electricity to heating water load should be adjusted to optimize the power dispatch between cogeneration units and wind turbines, resulting in fuel conservation. With this proposal, existing infrastructures are made full use of, and no additional ones are required. Finally a numerical simulation is performed in order to illustrate both the technical and economic feasibility of the aforementioned proposal, under ongoing infrastructures as well as electricity and space heating tariff conditions without changing participants’ benefits. The authors aim to persuade Chinese policy makers to enable EHPs to provide space heating to enable the integration of more wind power.
机译:在中国北方,由于燃煤热电联产设施的普及率很高,这些设施通常装有抽汽冷凝式汽轮机,因此在供暖季节可能会浪费大量风能资源。相反,发电部门消耗大量煤炭。在本文中,首先揭示出,在夜间非高峰负荷期间,最终用户的需求与热电联产的发电量之间的电能热能比例存在严重差异,这可能会抵消电力的有功功率平衡电网。其次,关于这种发散仅在晚上的非高峰负荷期间发生,给出了临时建议以便能够集成更多的风力。作者建议,如果将部分最终用户空间供暖的能量载体从供暖转换为电能(例如,电热泵(EHP)可以在家庭部门提供空间供暖),则电与供暖的比例应调整负载以优化热电联产机组与风力涡轮机之间的功率分配,从而节省燃料。通过此提议,现有基础结构得以充分利用,并且不需要其他基础结构。最后,在不改变参与者利益的情况下,在进行中的基础设施以及电费和空间供暖价格条件下,进行了数值模拟,以说明上述建议的技术和经济可行性。作者的目的是说服中国政策制定者,使EHP能够提供空间供暖,以整合更多的风能。

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